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Development of a Process for Copper Recovering from Galvanic Sludges

机译:开发一种从电沉积污泥中回收铜的方法

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Galvanic coating processes are based on metal plating baths and are responsible for the production of large amounts of wastewaters.Subsequent physical-chemical treatment of the wastewaters generates solid wastes called galvanic sludges.These sludges have a hazardous character and are often disposed,mainly on landfills,without any economical or environmental benefits.The development of alternatives and viable ways to reduce the environmental impact and recover the valuable metals contained in those sludges such as copper,chromium,nickel or zinc,which content might reach 30% (wt.%,dry weight) are of utmost importance.The present work has been developed in the aim of the project VALMETAIS and proposes a hydrometallurgical process for copper recovery from galvanic sludges produced by Ni/Cr plating plants.This procedure has been developed on laboratory scale and is based on leaching of sludges in sulphuric acid solution followed by copper cementation step,using iron scrap as a precipitating agent.The sludge has been characterized for its chemical and physical properties.Chemical analysis showed a copper concentration of more than 10% (dry base).Preliminary leaching tests in both sulphuric acid and ammoniacal media were performed in order to determine the best operating conditions for this step of the process and to assure the best metal recovery conditions in subsequent separation methods.Sulphuric acid yielded much higher metal ion dissolution when compared with ammoniacal leaching.Optimal experimental leaching parameters were defined as follows: sulphuric acid solution 100 g/1,a solid to liquid ratio of 1:10,stirring speed of 400 rpm at room temperature and under atmospheric pressure.It was found that metals dissolution was almost complete in 30 minutes of reaction time.Extraction rates of 99% for Cu and Ni were obtained under the leaching conditions above mentioned.The solid residue separated from the leaching solution is mostly constituted by gypsum (CaSO_4),and presents a metal content below 1%.The subsequent extraction of cooper from the obtained solution is achieved by a cementation step with iron scrap.Copper precipitation was performed at a pH of 2 which was achieved through adding new sludge to the filtered leaching solution.Such pH level led to insignificant precipitation of other metals present in the leaching solution,namely chromium.The recovery rate of copper is about 90% and the purity grade of the resulting copper cement enables its application as a commercial product.
机译:电镀涂层工艺基于金属镀浴,并产生大量废水。随后对废水进行物理化学处理会产生固体废物,称为电镀污泥。这些污泥具有危险性,经常被处置,主要在垃圾填埋场处置开发任何替代方法和可行的方法来减少环境影响并回收这些污泥中所含的有价值的金属,例如铜,铬,镍或锌,其含量可能达到30%(wt。%,干重是最重要的。目前的工作是针对VALMETAIS项目而开发的,并提出了一种湿法冶金工艺,用于从Ni / Cr电镀厂产生的电镀污泥中回收铜。基于硫酸溶液中污泥的浸出,然后进行铜固结步骤,以废铁为沉淀对污泥的化学和物理性质进行了表征,化学分析表明铜浓度超过10%(干碱),并在硫酸和氨水介质中进行了初步浸出试验,以确定最佳操作条件为了确保该工艺的这一步并确保随后的分离方法具有最佳的金属回收条件。与氨浸法相比,硫酸产生的金属离子溶解度高得多。最佳实验浸出参数定义如下:硫酸溶液100 g / 1,固液比为1:10,在室温和大气压下搅拌速度为400 rpm。发现在30分钟的反应时间内金属溶解几乎完成,对Cu和Ni的萃取率达到99%在上述浸出条件下,从浸出液中分离出的固体残渣主要由石膏(CaSO_4)构成。使金属含量低于1%。随后通过与铁屑的固结步骤从所得溶液中提取铜,在pH为2的条件下进行铜沉淀,这是通过向过滤的浸提溶液中添加新污泥来实现的。 pH值导致浸提液中存在的其他金属(铬)的沉淀不明显。铜的回收率约为90%,所得铜水泥的纯度等级使其可以作为商业产品应用。

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